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大鼠小脑切片中浦肯野细胞的突触和激动剂诱导的兴奋性电流。

Synaptic- and agonist-induced excitatory currents of Purkinje cells in rat cerebellar slices.

作者信息

Llano I, Marty A, Armstrong C M, Konnerth A

机构信息

Laboratoire de Neurobiologie, Ecole Normale Supérieure, Paris, France.

出版信息

J Physiol. 1991 Mar;434:183-213. doi: 10.1113/jphysiol.1991.sp018465.

Abstract
  1. Postsynaptic currents originating from activation of the two major excitatory inputs to Purkinje cells were studied in thin slices of rat cerebellum, using the tight-seal whole-cell recording technique. Two types of excitatory postsynaptic currents were analysed: those evoked by stimulation of the granule cell-parallel fibre system (PF-EPSC) and those elicited by stimulation of the climbing fibres (CF-EPSC). 2. Both types of postsynaptic currents had a linear current-voltage relation, reversing at membrane potentials close to 0 mV. Their time course of activation was independent of the membrane potential. 3. For both types of postsynaptic currents, the time course of decay was well described by a single exponential function, with a time constant which increased as the membrane potential was made more positive. 4. Postsynaptic currents arising from stimulation of the climbing fibre generally had a slightly faster time course of onset and decay than those associated with stimulation of the granule cell-parallel fibre system. The average values of the 10-90% rise time were 1.8 +/- 0.4 ms (means +/- S.D., n = 7) for PF-EPSCs and 0.8 +/- 0.3 ms (n = 9) for CF-EPSCs. Time constants of decay, at a holding potential of -60 mV, had values of 8.3 +/- 1.6 ms (n = 7) and 6.4 +/- 1.1 ms (n = 9) for PF-EPSCs and CF-EPSCs respectively. 5. CF-EPSCs and PF-EPSCs had the characteristics described above in slices derived from animals aged 9-22 days old and 9-15 days old, respectively. The PF-EPSCs in animals older than 15 days had very slow time courses and positive apparent reversal potentials, suggesting that they originated from distal locations, not under accurate voltage control. 6. In order to assess the quality of the voltage clamp, responses to hyperpolarizing pulses from -70 mV were analysed. The capacitive currents could be fitted by the sum of two exponentials, and were interpreted with an equivalent electrical circuit comprising two main compartments (soma and proximal dendrites on one hand, distal dendrites on the other). Analysis of synaptic currents in terms of this model suggested that the recorded time course of decay was approximately correct. 7. CF-EPSCs as well as PF-EPSCs were insensitive to the NMDA receptor antagonist 3-3(2-carboxypiperazine-4-yl)propyl-1-phosphonate (CPP), but were blocked in a dose-dependent reversible manner by the non-NMDA antagonist 6-cyano-7-nitroquinoxaline-2,3-dione (CNQX).(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 采用紧密封全细胞记录技术,在大鼠小脑薄片中研究了源自浦肯野细胞两大主要兴奋性输入激活的突触后电流。分析了两种类型的兴奋性突触后电流:由颗粒细胞 - 平行纤维系统刺激诱发的电流(PF - EPSC)和由攀缘纤维刺激引发的电流(CF - EPSC)。2. 两种类型的突触后电流均具有线性电流 - 电压关系,在接近0 mV的膜电位处反转。它们的激活时间进程与膜电位无关。3. 对于两种类型的突触后电流,其衰减时间进程都可用单个指数函数很好地描述,时间常数随着膜电位更正而增加。4. 由攀缘纤维刺激产生的突触后电流,其起始和衰减的时间进程通常比与颗粒细胞 - 平行纤维系统刺激相关的电流稍快。PF - EPSC的10 - 90%上升时间平均值为1.8±0.4 ms(均值±标准差,n = 7),CF - EPSC为0.8±0.3 ms(n = 9)。在 - 60 mV的钳制电位下,PF - EPSC和CF - EPSC的衰减时间常数分别为8.3±1.6 ms(n = 7)和6.4±1.1 ms(n = 9)。5. CF - EPSC和PF - EPSC分别在源自9 - 22日龄和9 - 15日龄动物的薄片中具有上述特征。15日龄以上动物的PF - EPSC具有非常缓慢的时间进程和正的表观反转电位,表明它们起源于远端位置,不受精确电压控制。6. 为了评估电压钳制的质量,分析了对从 - 70 mV开始的超极化脉冲的响应。电容电流可用两个指数之和拟合,并用一个等效电路来解释,该电路包括两个主要部分(一方面是胞体和近端树突,另一方面是远端树突)。根据该模型对突触电流的分析表明,记录的衰减时间进程大致正确。7. CF - EPSC以及PF - EPSC对NMDA受体拮抗剂3 - 3(2 - 羧基哌嗪 - 4 - 基)丙基 - 1 - 膦酸酯(CPP)不敏感,但被非NMDA拮抗剂6 - 氰基 - 7 - 硝基喹喔啉 - 2,3 - 二酮(CNQX)以剂量依赖性可逆方式阻断。(摘要截断于400字)
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/82df/1181413/ddc227612548/jphysiol00449-0192-a.jpg

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